Personius K E, Balice-Gordon R J
Department of Neuroscience, University of Pennsylvania School of Medicine, 215 Stemmler Hall, Philadelphia, PA 19104, USA.
Neuron. 2001 Aug 16;31(3):395-408. doi: 10.1016/s0896-6273(01)00369-5.
During late stages of neural development, synaptic circuitry is edited by neural activity. At neuromuscular synapses, the transition from multiple to single innervation is modulated by the relative pattern of activity among inputs competing for innervation of the same muscle fiber. While experimental perturbations of activity result in marked changes in the timing of neuromuscular synaptic competition, little is known about the patterns of activity present during normal development. Here, we report the temporal patterning of motor unit activity in the soleus muscle of awake, behaving neonatal mice, and that patterning is modulated by gap-junctional coupling. Our work suggests that neuromuscular synaptic competition is modulated by surprisingly low levels of activity and may be triggered by the disappearance of temporally correlated activity among inputs competing for innervation of the same muscle fiber.
在神经发育的后期阶段,突触回路由神经活动进行编辑。在神经肌肉突触处,从多重支配到单一支配的转变是由竞争同一肌纤维支配的输入之间的相对活动模式调节的。虽然活动的实验性扰动会导致神经肌肉突触竞争时间的显著变化,但对于正常发育过程中存在的活动模式却知之甚少。在此,我们报告了清醒、行为活跃的新生小鼠比目鱼肌中运动单位活动的时间模式,并且该模式受缝隙连接耦合的调节。我们的研究表明,神经肌肉突触竞争受到低水平活动的惊人调节,并且可能由竞争同一肌纤维支配的输入之间时间相关活动的消失所触发。